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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Enantioseparations by capillary electro-chromatography: Differences exhibited by normal- and reversed-phase versions of polysaccharide stationary phases.
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Enantioseparations by capillary electro-chromatography: Differences exhibited by normal- and reversed-phase versions of polysaccharide stationary phases.

机译:通过毛细管电色谱法进行对映体分离:多糖固定相的正相和反相形式表现出差异。

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摘要

The influence of using normal-phase and reversed-phase versions of four commercial polysaccharide stationary phases on chiral separations was investigated with capillary electrochromatography (CEC). Both versions of the stationary phases, Chiralcel OD, OJ, and Chiralpak AD, AS were tested for the separation of two basic, two acidic, a bifunctional, and a neutral compound. Different background electrolytes were used, two at low pH for the acid, bifunctional and neutral substances, and three at high pH for the basic, bifunctional and neutral ones. This setup allowed evaluating differences between both stationary-phase versions and between mobile-phase compositions on a chiral separation. Duplicate CEC columns of each stationary phase were in-house prepared and tested, giving information about the intercolumn reproducibility. In general, reversed-phase versions of the current commercial polysaccharide stationary phases are found to be best for reversed-phase CEC, even though at high pH no significant differences were seen between both versions. Most differences were observed at low pH. For acidic compounds, it was seen that an ammonium formate electrolyte performed best, which is also an excellent electrolyte if coupling with mass spectrometry is desired. For basic, bifunctional and neutral compounds, no significant differences between the three tested electrolytes were observed at high pH. Here, a phosphate buffer is preferred as electrolyte because of its buffering capacities. However, if coupling to mass spectrometry is wanted, the more volatile ammonium bicarbonate electrolyte can be used as an alternative.
机译:通过毛细管电色谱法(CEC)研究了使用四种商业多糖固定相的正相和反相版本对手性分离的影响。对两种形式的固定相Chiralcel OD,OJ和Chiralpak AD,AS进行了两种碱性,两种酸性,双官能和中性化合物的分离测试。使用了不同的背景电解液,其中两种在低pH下用于酸,双功能和中性物质,三种在高pH下用于碱性,双功能和中性物质。该设置允许评估手性分离时两种固定相形式之间以及流动相组成之间的差异。在内部准备并测试了每个固定相的重复CEC色谱柱,从而提供了有关柱间重现性的信息。通常,发现目前市售多糖固定相的反相版本最适用于反相CEC,即使在高pH值下,两种版本之间也没有明显差异。在低pH下观察到大多数差异。对于酸性化合物,可以看出甲酸铵电解质性能最好,如果需要与质谱联用,那么它也是一种优异的电解质。对于碱性,双功能和中性化合物,在高pH下三种被测电解质之间没有观察到显着差异。在此,磷酸盐缓冲剂由于其缓冲能力而优选作为电解质。但是,如果需要与质谱耦合,则可以使用挥发性更高的碳酸氢铵电解质作为替代方案。

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